Design of shortcuts to adiabaticity for Bose-Einstein condensates dynamics in soliton Josephson junctions

Jingru Wu, Chengyu Han, Qian Kong
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Abstract

This article primarily establishes a two-soliton system and employs the Lewis-Riesenfeld invariant inverse control method to achieve shortcuts to adiabaticity (STA) technology. We study on the atomic soliton Josephson junctions (SJJs) device and subsequently compare and analyze it with atomic bosonic Josephson junctions (BJJs). Moreover, we use higher-order expressions of the auxiliary equations to optimize the results and weaken the detrimental effect of the sloshing amplitude. We find that in the adiabatic shortcut evolution of two systems with time-containing tunnelling rates, the SJJs system is more robust over a rather short time evolution. In comparison with linear ramping, the STA technique is easier to achieve with the precise modulation of the quantum state in the SJJs system.
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为孤子约瑟夫森结中的玻色-爱因斯坦凝聚态动力学设计绝热捷径
本文主要建立了一个双孤子系统,并采用刘易斯-里森费尔德不变量逆控制方法实现了绝热捷径(STA)技术。我们研究了原子孤子约瑟夫森结(SJJs)装置,随后将其与原子玻色约瑟夫森结(BJJs)进行了比较和分析。此外,我们还使用了辅助方程的高阶表达式来优化结果,并削弱了荡振幅的不利影响。我们发现,在两个含时间隧穿率系统的绝热短程演化过程中,SJJs 系统在相当短的时间演化过程中更为稳健。与线性斜坡相比,STA 技术更容易在 SJJs 系统中实现量子态的精确调制。
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